Jitendra Pal Singh – författare
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Oxides for Medical Applications reviews the most important advances of oxides with optical, magnetic and electronic properties for biomedical applications. Owing to their unusual properties, oxides are expected to play a significant role in the prevention or early treatment of diseases. In addition to catalytically active artificial enzymes based on oxide materials-the book provides comprehensive coverage of the most relevant categories of oxide materials and their properties and applications. Since magnetic oxides are used extensively for a wide range of medical applications, there are numerous chapters that address these materials, including LSMO nanoparticles, ferrites, nanocatalysts, and more.
Finally, practical considerations for the translation of these materials from the lab to the clinic are reviewed, including biocompatibility and toxicity of oxide nanoparticles, making this a suitable resource for researchers and practitioners in materials science and engineering in academia and the clinic.
Reviews the unique properties and synthesis strategies of oxide materials for medical applications Provides an overview of the most relevant medical applications of oxide materials such as their use in biosensing, drug delivery, tissue engineering, and more Discusses practical considerations of the commercial translation of oxide materials, including their biocompatibility3 560 kr
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Defect-Induced Magnetism in Oxide Semiconductors provides an overview of the latest advances in defect engineering to create new magnetic materials and enable new technological applications. First, the book introduces the mechanisms, behavior, and theory of magnetism in oxide semiconductors and reviews the methods of inducing magnetism in these materials. Then, strategies such as pulsed laser deposition and RF sputtering to grow oxide nanostructured materials with induced magnetism are discussed. This is followed by a review of the most relevant postdeposition methods to induce magnetism in oxide semiconductors including annealing, ion irradiation, and ion implantation. Examples of defect-induced magnetism in oxide semiconductors are provided along with selected applications.
This book is a suitable reference for academic researchers and practitioners and for people engaged in research and development in the disciplines of materials science and engineering.
Reviews the magnetic, electrical, dielectric and optical properties of oxide semiconductors with defect-induced magnetism Discusses growth and post-deposition strategies to grow oxide nanostructured materials such as oxide thin films with defect-induced magnetism Provides examples of materials with defect-induced magnetism such as zinc oxide, cerium dioxide, hafnium dioxide, and more4 539 kr
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Oxide materials will play a significant role in the development of rechargeable batteries. They have been shown to be effective cathode materials since the 1980s, however, due to their unusual properties their use in anodes and as solid-state electrolytes has recently gathered global scientific interest and is showing potential for both Li and Na batteries in different applications. This title will give a comprehensive overview of the various oxides in use in electrochemical energy storage devices. The aim is to give readers conceptual understanding of oxide materials and their utilization in energy fields for future development. The book will be of interest to postgraduate students and researchers in the fields of energy storage, electric vehicles, chemical engineering and materials design. The book will be interdisciplinary with experts in oxide chemistry, physics and materials participating.
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Oxide materials will play a significant role in the development of rechargeable batteries. They have been shown to be effective cathode materials since the 1980s, however, due to their unusual properties their use in anodes and as solid-state electrolytes has recently gathered global scientific interest and is showing potential for both Li and Na batteries in different applications. This title will give a comprehensive overview of the various oxides in use in electrochemical energy storage devices. The aim is to give readers conceptual understanding of oxide materials and their utilization in energy fields for future development. The book will be of interest to postgraduate students and researchers in the fields of energy storage, electric vehicles, chemical engineering and materials design. The book will be interdisciplinary with experts in oxide chemistry, physics and materials participating.
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633 kr
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This book provides an overview of the applications of ion beam techniques in oxide materials. Oxide materials exhibit defect-induced physical properties relevant to applications in sensing, optoelectronics and spintronics. Defects in these oxide materials also lead to magnetism in non-magnetic materials or to a change of magnetic ordering in magnetic materials. Thus, an understanding of defects is of immense importance. To date, ion beam tools are considered the most effective techniques for producing controlled defects in these oxides. This book will detail the ion beam tools utilized for creating defects in oxides.
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